桑叶水提物通过调节肠道菌群-宿主支链氨基酸共代谢缓解小鼠2型糖尿病。

IF 6.1 2区 医学 Q1 CHEMISTRY, MEDICINAL Phytotherapy Research Pub Date : 2023-08-01 DOI:10.1002/ptr.7822
Xiao-Xiao Zheng, Ding-Xiang Li, Ya-Ting Li, Yu-Lang Chen, Yan-Lin Zhao, Shuai Ji, Meng-Zhe Guo, Yan Du, Dao-Quan Tang
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引用次数: 2

摘要

环状支链氨基酸(BCAAs)水平升高与胰岛素抵抗和2型糖尿病(T2DM)相关。桑树水提取物(MLE)具有一定的降血糖作用,但其作用机制尚不清楚。本研究旨在探讨MLE的抗糖尿病作用与宿主和肠道菌群调节的支链氨基酸共代谢的关系。分别用RT-PCR和western blot检测bcaa分解代谢酶的组织特异性表达。采用高通量16S rRNA基因测序分析肠道菌群组成。结果表明,MLE可改善小鼠血糖和胰岛素水平,降低炎症因子表达,降低血清和粪便BCAAs水平。此外,MLE逆转了与血清和粪便BCAAs相关的细菌属的丰度变化,如Anaerovorax、Bilophila、Blautia、Colidextribacter、Dubosiella、肠子单胞菌、Lachnoclostridium、Lachnospiraceae_NK4A136、Oscillibacter和Roseburia。功能预测表明MLE可能抑制细菌BCAAs的生物合成,并促进BCAAs分解代谢酶的组织特异性表达。更重要的是,MLE对无细菌模拟T2DM小鼠的BCAA分解代谢有明显影响。这些结果表明,MLE改善t2dm相关生化异常不仅与肠道菌群改变有关,还与BCAAs分解代谢酶的组织特异性表达有关。
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Mulberry leaf water extract alleviates type 2 diabetes in mice via modulating gut microbiota-host co-metabolism of branched-chain amino acid.

Elevations in circling branched-chain amino acids (BCAAs) levels associated with insulin resistance and type 2 diabetes mellitus (T2DM). Morus alba L. water extracts (MLE) show hypoglycemic function, but the precise mechanism remains obscure. This study is designed to investigate the association of the antidiabetes effect of MLE with the BCAAs co-metabolism modulated by host and gut microbiota. Tissue-specific expressions of BCAA-catabolizing enzymes were detected by RT-PCR and western blot, respectively. The components of the intestinal microflora were analyzed by high-throughput 16S rRNA gene sequencing. The results showed that MLE administration improved blood glucose and insulin level, decreased inflammatory cytokines expression, and lowered serum and feces BCAAs levels. Furthermore, MLE reversed the abundance changes of the bacterial genera correlated with serum and feces BCAAs, such as Anaerovorax, Bilophila, Blautia, Colidextribacter, Dubosiella, Intestinimonas, Lachnoclostridium, Lachnospiraceae_NK4A136, Oscillibacter, and Roseburia. Functionality prediction indicated that MLE potentially inhibited bacterial BCAAs biosynthesis, and promoted the tissue-specific expression of BCAAs catabolic enzyme. More importantly, MLE had obvious impacts on BCAA catabolism in germ-free-mimic T2DM mice. Those results indicated that MLE improving T2DM-related biochemical abnormalities is associated with not only gut microbiota modification but also the tissue-specific expression of BCAAs catabolic enzyme.

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来源期刊
Phytotherapy Research
Phytotherapy Research 医学-药学
CiteScore
12.80
自引率
5.60%
发文量
325
审稿时长
2.6 months
期刊介绍: Phytotherapy Research is an internationally recognized pharmacological journal that serves as a trailblazing resource for biochemists, pharmacologists, and toxicologists. We strive to disseminate groundbreaking research on medicinal plants, pushing the boundaries of knowledge and understanding in this field. Our primary focus areas encompass pharmacology, toxicology, and the clinical applications of herbs and natural products in medicine. We actively encourage submissions on the effects of commonly consumed food ingredients and standardized plant extracts. We welcome a range of contributions including original research papers, review articles, and letters. By providing a platform for the latest developments and discoveries in phytotherapy, we aim to support the advancement of scientific knowledge and contribute to the improvement of modern medicine.
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